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C A Beck

Publications and source records attributed to C A Beck.

34 records · Page 2Linked to original sources

Modulators of cellular protein phosphorylation alter the trans-activation function of human progesterone receptor and the biological activity of progesterone antagonists.

Addition of progesterone to breast cancer cells in vivo increases phosphorylation of human progesterone receptor (PR), suggesting that phosphorylation has a regulatory role in producing the activated form of receptor. Kinetic analysis indicates that hormone-dependent phosphorylation is sequential and that early stages of phosphorylation(s) are closely associated with enhancement of PR-DNA binding while later stages are associated with a trans-activation function. Various agents that stimulate cellular protein phosphorylation (8-Br cAMP, okadaic acid, TPA) functionally synergize with progesterone to enhance progesterone-dependent PR trans-activation in intact cells. These results suggest that protein phosphorylation does have a role in modulating the trans-activation function of PR in vivo. They also demonstrate cross-talk between second messenger signal transduction pathways and nuclear steroid receptors. Whether the phosphorylated target that provides the link between these two signal transduction pathways is PR itself or another protein involved in PR-mediated gene transcription is not known. Positive cooperative interactions were also observed between cAMP signaling pathways and the progesterone antagonist RU486, that resulted in RU486 exerting substantial agonist activities. This ability of cross-talk between second messenger and steroid receptor signal transduction pathways to override the antagonistic effects of RU486 suggests a novel mechanism to explain the problem of resistance to clinically important steroid antagonists.

8-Bromo Cyclic Adenosine Monophosphate↗

The steroid antagonist RU486 exerts different effects on the glucocorticoid and progesterone receptors.

To determine whether the steroid antagonist RU486 mediates its antiglucocorticoid and antiprogestin activities by the same or different receptor mechanisms, a direct comparison of RU486 interaction with glucocorticoid (GR) and progesterone (PR) receptors was made. The effects of RU486 on transformation of GR and PR 8-10S complexes in the intact cell and in vitro were analyzed by sucrose density gradient centrifugation, and the in vitro stability of receptor-heat shock protein-90 interactions was analyzed by coimmunoprecipitation. Compared to agonist, RU486 binding produced a reduction in the amount of GR converted from 8S to 4S and stabilized the GR-heat shock protein-90 complex. By contrast, PR-RU486 complexes were transformed both in vitro and in the intact cell to the same extent as receptor-agonist complexes. PR-RU486 complexes sedimented at 5-6S, whereas PR-R5020, GR-RU486, and GR-agonist complexes sedimented at 4S. The portion of GR that undergoes nuclear transformation when bound to RU486 was examined for binding to the glucocorticoid-progesterone response element of the mouse mammary tumor virus by an immunoprecipitation assay. The nuclear-transformed GR-RU486 complex bound the glucocorticoid-progesterone response element with the same affinity as the nuclear-transformed GR-triamcinolone acetonide complex. The electrophoretic mobilities of GR-RU486 complexes and GR-agonist complexes were the same, as determined by gel retardation assay. These results suggest that RU486 exerts its antiglucocorticoid activity at two levels of receptor action: prevention of complete GR transformation and alteration of a step subsequent to GR-DNA binding. As an antiprogestin, RU486 action is exerted predominantly at a post-DNA-binding step.

Animals↗

Cost benefits of low dose subcutaneous erythropoietin in patients with anaemia of end stage renal disease.

OBJECTIVE: To assess the cost benefits of low dose subcutaneous recombinant human erythropoietin in correcting the anaemia of end stage renal disease. DESIGN: Three year retrospective study. SETTING: Subregional nephrology service serving a mixed urban and rural population of 800,000. SUBJECTS: 60 patients with symptoms of anaemic end stage renal disease treated with erythropoietin (43 receiving haemodialysis; 11 receiving continuous ambulatory peritoneal dialysis; two with predialysis end stage renal disease; four with failing renal transplants). MAIN OUTCOME MEASURES: Costs and savings of achieving and maintaining a haemoglobin concentration of 85-105 g/l with erythropoietin. RESULTS: All patients treated with erythropoietin achieved the target haemoglobin concentration at median induction doses of 97 (95% confidence interval 95 to 108) units/kg/week, and this was maintained with 79 (75 to 95) units/kg/week at an average annual cost per patient of 2260 pounds. Admissions related to anaemia were virtually eliminated (246 v 1 inpatient days for 12 months before and after starting erythropoietin). 54 patients required no blood transfusions after starting erythropoietin, and the total requirements fell from 230 to 21 units in the 12 months before and after starting erythropoietin. Iron stores were maintained with oral or intravenous iron. All patients reported increased wellbeing, appetite, and exercise capacity. Hypertension developed or worsened in 30 patients, resulting in hospital admissions in five patients, one of whom had seizures. CONCLUSION: Low dose subcutaneous erythropoietin restores haemoglobin concentrations sufficiently to abolish blood transfusion requirements and reduce morbidity. The net cost of erythropoietin prescribed in this way (2260 pounds/patient/year) was largely offset by savings in costs of hospital admissions. The true annual cost to the NHS was around 1200 pounds per patient.

Adult↗

Stimulation of DNA synthesis in rat uterine cells by growth factors and uterine extracts.

Replicative DNA synthesis, as measured by thymidine incorporation, has been measured in rat uterine cells in primary culture in response to growth factors. Insulin, insulin-like growth factor-I (IGF-I), multiplication-stimulating activity (MSA) and platelet-derived growth factor (PDGF) stimulated DNA synthesis, while estradiol, epidermal growth factor (EGF), transforming growth factor-beta (TGF-beta), basic fibroblast growth factor (bFGF) and relaxin did not stimulate or did so weakly and only at very high concentrations. Uterine acid extracts also stimulated DNA synthesis. IGF-I stimulated at concentrations consistent with its acting through the IGF-I receptor; however, insulin stimulated at concentrations higher than expected for its acting through its receptor and this its action may be mediated through the IGF-I receptor. IGF-I was found in uterine tissue by radioimmunoassay (RIA). There was a 5- to 10-fold increase in IGF-I in the uteri from ovariectomized rats that had been treated with estradiol 24 h earlier. This is analogous to the increase in growth factor activity found previously in rat uterus after 24-h estradiol treatment (Beck, C.A. and Garner, C.W. (1989) Mol. Cell. Endocrinol. 63, 93-101). These data are consistent with the hypothesis that estradiol effects in the uterus are in part mediated through IGF-I.

Animals↗

Ligands induce conformational changes in the carboxyl-terminus of progesterone receptors which are detected by a site-directed antipeptide monoclonal antibody.

We have prepared a monoclonal antibody, C-262, to a synthetic peptide that contains the carboxy-terminal 14 amino acids from progesterone receptors (PR). This sequence is 100% conserved in all species of PRs that have been cloned to date, suggesting that this antibody will recognize all mammalian and avian PR. The C-262 antibody recognizes both native and denatured forms of the receptor. However, it does not recognize PR when they are bound to the hormone agonists progesterone or R5020. Surprisingly the antibody does recognize PR when they are bound to the steroid antagonist RU486. This suggests that progestin agonists induce a conformational change in the receptor that occludes the C-262 epitope in the carboxyl-terminus, whereas unliganded receptors and receptors bound with RU486 assume distinct conformations that leaves the C-terminal tail accessible to the C-262 antibody.

Amino Acid Sequence↗

Effects of hormone and cellular modulators of protein phosphorylation on transcriptional activity, DNA binding, and phosphorylation of human progesterone receptors.

Human progesterone receptors (PR) in T47D breast cancer cells are synthesized as two different sized proteins, PR-A [94 kilodaltons (kDa)] and PR-B (120 kDa). Progestin addition to cells (in vivo) causes a 2-fold increase in total phosphorylation of PR and an increase in the apparent mol wt of both PR-A and PR-B on sodium dodecyl sulfate (SDS)-gels. Time-course experiments showed that increased PR phosphorylation that results from hormone addition is a multistep process and involves a rapid increase into total 32P labeling that takes place before the more slowly occurring phosphorylation(s) responsible for the change in electrophoretic mobility of PR on SDS-gels. As an approach to test whether phosphorylation is involved in regulating PR activity, we have examined the effects of cellular modulators of protein phosphorylation on PR-mediated target gene transcription in vivo using a T47D cloned cell line containing a stably transfected mouse mammary tumor virus-chloramphenicol acetyltransferase construct. Treatment with 8-bromo-cAMP (activator of cAMP-dependent protein kinases) or okadaic acid (protein phosphatase-1 and -2A inhibitor) did not stimulate target gene expression in the absence of progestin. When added together with progestin, either compound augmented PR-mediated target gene transcription by 3- to 4-fold. The cyclic nucleotide-dependent protein kinase inhibitor H8 completely blocked target gene responsiveness to hormone. Neither 8-bromo-cAMP, okadaic acid, nor H8 altered the hormone- or DNA-binding activities of PR, as measured in vitro or affected cellular concentrations of PR. These agents, therefore, appeared to selectively modulate PR transcriptional activity. Moreover, none of these compounds altered expression from a control reporter gene, pSV2CAT, indicating that these agents affect PR-mediated processes directly and are not acting through a general effect on transcription. Effects on PR phosphorylation were assessed by measuring 32P labeling of PR in vivo. None of these treatments had a substantial effect on the extent of total 32P labeling of immune isolated PR or on the phosphorylation(s) responsible for PR up-shifts on SDS-gels. This suggests that these agents modulate PR transcriptional activity either through phosphorylation of another protein intimately involved in PR-mediated transcription or through modification of a key site(s) not measurable as a change in total PR phosphorylation or electrophoretic mobility on SDS gels.

8-Bromo Cyclic Adenosine Monophosphate↗

Dimerization of mammalian progesterone receptors occurs in the absence of DNA and is related to the release of the 90-kDa heat shock protein.

In this study we have demonstrated that dimerization of mammalian progesterone receptors (PR) occurs in the absence of DNA. A specific immune coisolation assay was performed on extracts of T-47D human breast cancer cells with a monoclonal antibody specific for the full-length B form of progesterone receptor (PR-B). This resulted in coisolation of significant amounts of truncated form-A receptors (PR-A), indicating the presence of stable PR-A.PR-B dimers in solution. A positive correlation was observed between the ability of different receptor forms to oligomerize in solution and their ability to bind to specific DNA sequences. The ability to form stable PR-A.PR-B oligomers in the absence of DNA was also found to correlate with release of 90-kDa heat shock protein (hsp90) from the unactivated PR complex. These results support the hypothesis that dimerization in the absence of DNA is an important mechanism controlling receptor DNA-binding function and that hsp90 release may be a key step regulating dimerization. This suggests that hsp90 may function to repress DNA-binding activity indirectly by blocking receptor dimerization.

Base Sequence↗

Mechanisms controlling steroid receptor binding to specific DNA sequences.

Mammalian progesterone receptors activated by hormone binding in nuclei of intact cells exhibit substantially higher binding activity for specific DNA sequences than receptors bound with hormone and activated in cell-free cytosol. Differences in DNA-binding activity occur despite the fact that both activated receptor forms sediment at 4S on sucrose gradients and are apparently dissociated from the heat shock protein 90. This suggests that hormone-induced release of heat shock protein 90 from receptors is necessary, but not sufficient for maximal activation of DNA binding. This report is a review of studies from our laboratories that have examined the role of receptor interaction with other nuclear protein factor(s), and receptor dimerization in solution, as additional regulatory steps involved in the process of receptor activation and binding to specific gene sequences.

Base Sequence↗

Characterization and functional properties of the A and B forms of human progesterone receptors synthesized in a baculovirus system.

Human progesterone receptors (PR) were overexpressed in Spodoptera frugiperda (Sf9) insect cells using a recombinant baculovirus system. Recombinant viruses were constructed that produced either full-length A (94K) or B (120K) forms of human PR, and each was expressed as a functional protein. Steroid and DNA binding activities were found to be indistinguishable from that of endogenous human PR in T47D breast cancer cells. Moreover, as analyzed by gel-mobility shift, recombinant PR-A and PR-B each bound to specific progesterone response elements in a strictly hormone-dependent manner. Native receptors expressed in Sf9 cells also exhibited structural properties similar to that of endogenous PR. Cytosolic PR (PR-A or PR-B), prepared in low salt buffer, sedimented on density gradients as an 8S oligomeric complex that was converted largely to 4S by treatment with 0.4 M NaCl. Immune isolation of the 8S cytosol PR complex and analysis of protein composition revealed the presence of two specific copurifying proteins of approximately 90K and 70K. The 90-K component was identified immunologically as heat shock protein 90. The 70-K component was not identified but is likely to be the insect equivalent of heat shock protein 70. Immune isolation of PR from Sf9 cells metabolically labeled with [32Pi], revealed that expressed PR was capable of being phosphorylated in insect cells. Hormone addition to Sf9 cells, however, did not stimulate the same increase in PR phosphorylation or upshift in mobility on sodium dodecyl sulfate gels that occurs with endogenous receptors in T47D cells. Thus some, but not all, phosphorylations occur with human PR expressed in Sf9 cells. These phosphorylation data, together with the fact that expressed PR required hormone for DNA binding, indicate that the hormone-dependent phosphorylation step responsible for PR upshifts on sodium dodecyl sulfate-polyacrylamide gel electrophoresis is not required for receptor binding to DNA. The baculovirus expression system, therefore, may prove valuable in dissecting the functional role(s) for both hormone-dependent and hormone-independent PR phosphorylation.

Animals↗

Characterization and estrogen regulation of growth factor activity from uterus.

Acid-stable uterine-derived growth factor activity, extracted from uteri of several species (rat, rabbit and bovine), stimulates DNA synthesis as measured by [3H]thymidine incorporation into hamster uterine carcinosarcoma (UCS) cells. A time course of [3H]thymidine incorporation demonstrates maximum incorporation at 24 h. These extracts also stimulate [3H]thymidine incorporation in a variety of other cell types from 17 beta-estradiol (E2) target tissues and non-target tissues. Uterine extracts from E2-treated ovariectomized rats show a 3-fold increase in growth factor activity above control values. Activity is elevated within 18-24 h after estradiol injection and remains elevated wtih subsequent injections. Growth factor activity is acid-stable, heat-labile, reduced by trypsin but not reduced by treatment with dextran-coated charcoal. Gel filtration shows molecular weight (Mr) heterogeneity with activity eluting at Mr of 10,000-30,000. Since uterine extracts can restore in vitro the estrogen-regulated properties of uterine growth observed previously in vivo, it is possible that the substances found in these extracts may be mediators of E2 actions.

Animals↗

Stimulation of glucose transport in cultured uterine cells by rat and rabbit uterine extracts.

Estradiol-17 beta was previously shown to stimulate glucose transport (as measured by phosphorylation of 2-deoxyglucose) in rat uterine tissue in vivo (Meier, D.A. and Garner, C.W. (1987) Endocrinology 121, 1366-1374) but attempts to demonstrate this in uterine organ strips in vitro, in uterine tumor cell lines or in uterine cells in primary culture have been unsuccessful. However, aqueous uterine extracts and uterine luminal fluid did stimulate glucose transport in uterine tumor cells and uterine cells in primary culture. Estradiol in vivo and uterine extracts in vitro each increased the initial rate of glucose transport 1.5- to 3-fold. In each case, 2-3 h were required for the stimulation to be fully expressed. The stimulation was not inhibited by cycloheximide suggesting that protein synthesis was not required. Uteri from ovariectomized rats injected daily for 4 days with 10 micrograms estradiol contained 4-fold more activity than uteri from saline-injected control animals. The activity was acid- and heat-stable, inactivated by trypsin treatment but not removed by dextran-coated charcoal treatment, suggesting that the activity is (or is associated with) a protein. The activity eluted in the 6-12 kDa range upon chromatography on Sephadex G-50. Insulin (1-1000 ng/ml) and epidermal growth factor (1-100 ng/ml) stimulated glucose transport, but only less than 50% of the stimulation by extracts. The substance(s) present in the extracts, possibly a known growth factor, may be involved in the estradiol stimulation of glucose transport and other estradiol actions in vivo.

Animals↗

Naloxone and naltrexone. Application in COPD.

The narcotic antagonists naloxone and naltrexone were used as respiratory stimulants in two patients failing traditional medical therapy for COPD. Both patients demonstrated improvement while receiving the drugs, but developed respiratory failure when they were discontinued abruptly. In selected patients with COPD, narcotic antagonists may offer an additional mode of therapy.

Aged↗

Helminths of the Florida manatee, Trichechus manatus latirostris, with a discussion and summary of the parasites of sirenians.

We examined 215 Florida manatees (Trichechus manatus latirostris) at necropsy to determine the helminth fauna. Six species were identified: Heterocheilus tunicatus (Nematoda: Ascaridoidea); Anoplocephala sp. (Cestoda: Cyclophyllidea); and 4 species of trematodes, Cochleotrema cochleotrema (Digenea: Opisthotrematidae), Chiorchis fabaceus (Digenea: Paramphistomatidae), Nudacotyle undicola (Digenea: Nudacotylidae), and Moniligerum blairi (Digenea: Opisthotrematidae). Seventy-three percent of the manatees examined were infected with at least 1 species of helminth. The mean number of species of helminths per infected manatee was 1.9 with a range of 1-4. Fifty-nine manatees were helminth-free; 30 of these were calves. No associations were found between the intensity of helminth infections and host sex, age class, season, and geographic location of recovery, or cause of death. Differences in parasite prevalence between age classes were highly significant for Chiorchis, Cochleotrema, and Heterocheilus, due to a low number of infected calves. A higher prevalence of Cochleotrema was found in manatees recovered from eastern Florida, and Heterocheilus was evident in significantly more manatees from western and souther Florida. Comparisons in the parasite fauna are made among Florida manatees and other sirenian populations, and a brief review of sirenian parasites is included.

Animals↗

Pathologic findings in manatees in Florida.

Necropsy and microscopic examinations of 16 West Indian manatees (Trichechus manatus) revealed that the mortality of many of the animals was associated with environmental factors such as human-inflicted trauma and cold winters. Natural disease processes accounted for the death of only 1 manatee. In 3 manatees, the cause of death could not be determined.

Animals↗